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Title: Dark matter interpretation of the Fermi-$$\mathrm{LAT}$$ observation toward the Galactic Center

Journal Article · · Physical Review. D.
 [1];  [1];  [1];  [2];  [3]
  1. University of California, Irvine, CA (United States)
  2. Stanford University, CA (United States). Kavli Institute for Particle Astrophysics & Cosmology
  3. University of California, Irvine, CA (United States); University of California, Riverside, CA (United States)

The center of the Milky Way is predicted to be the brightest region of γ-rays generated by self-annihilating dark matter particles. Excess emission about the Galactic center above predictions made for standard astrophysical processes has been observed in γ-ray data collected by the Fermi Large Area Telescope. It is well described by the square of a Navarro, Frenk, and White dark matter density distribution. Although other interpretations for the excess are plausible, the possibility that it arises from annihilating dark matter is valid. Here in this paper, we characterize the excess emission as annihilating dark matter in the framework of an effective field theory. Here we consider the possibility that the annihilation process is mediated by either pseudoscalar or vector interactions and constrain the coupling strength of these interactions by fitting to the Fermi Large Area Telescope data for energies 1–100 GeV in the 15° × 15° region about the Galactic center using self-consistently derived interstellar emission models and point source lists for the region. The excess persists and its spectral characteristics favor a dark matter particle with a mass in the range approximately from 50 to 190 (10 to 90) GeV and annihilation cross section approximately from 1 × 10-26 to 4 × 10-25 (6 × 10-27 to 2 × 10-25) cm3/s for pseudoscalar (vector) interactions. We map these intervals into the corresponding WIMP-neutron scattering cross sections and find that the allowed range lies well below current and projected direct detection constraints for pseudoscalar interactions, but are typically ruled out for vector interactions.

Research Organization:
Univ. of California, Irvine, CA (United States)
Sponsoring Organization:
USDOE Office of Science (SC); National Science Foundation (NSF); National Aeronautics and Space Administration (NASA)
Grant/Contract Number:
SC0014431; PHY-1316792; PHY-1620638; NNX09AC15G; NNX10AE78G; NNX13AC47G
OSTI ID:
1536292
Alternate ID(s):
OSTI ID: 1355968
Report Number(s):
UCI-HEP-TR-2016-22
Journal Information:
Physical Review. D., Vol. 95, Issue 10; ISSN 2470-0010
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 74 works
Citation information provided by
Web of Science

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Cited By (10)

Thermodynamic evolution of secluded vector dark matter: conventional WIMPs and nonconventional WIMPs journal November 2019
How to produce antinuclei from dark matter journal September 2020
Black holes, dark matter spikes, and constraints on simplified models with t -channel mediators journal August 2018
Millisecond pulsars, TeV halos, and implications for the Galactic Center gamma-ray excess journal August 2018
The inert doublet model in the light of Fermi-LAT gamma-ray data: a global fit analysis text January 2017
Unveiling dark matter with cosmic messengers text January 2020
Hidden Higgs Portal Vector Dark Matter for the Galactic Center Gamma-Ray Excess from the Two-Step Cascade Annihilation, and Muon g-2 text January 2018
Extragalactic Searches for Dark Matter Annihilation preprint January 2018
Multimessenger TeV Dark Matter: a mini review text January 2019
Heavy dark matter particle annihilation in dwarf spheroidal galaxies: radio signals at the SKA telescope text January 2019

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